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Torsional motion of the left ventricle does not affect ventricular fluid dynamics of both foetal and adult hearts

机译:左心室的扭转运动不会影响胎儿和成人心脏的心室流体动力学

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Left ventricular torsion is caused by shortening and relaxation of the helical fibres in the myocardium, and is thought to be an optimal configuration for minimizing myocardial tissue strains. Characteristics of torsional motion has also been proposed to be markers for cardiac dysfunction. However, its effects on fluid and energy dynamics in the left ventricle have not been comprehensively investigated. To investigate this, we performed image-based flow simulations on five healthy adult porcine and two healthy human foetal left ventricles (representing two different length scales) at different degrees of torsional motions. In the adult porcine ventricles, cardiac features such as papillary muscles and mitral valves, and cardiac conditions such as myocardial infarctions, were also included to investigate the effect of twist. The results showed that, for all conditions investigated, ventricular torsional motion caused minimal changes to flow patterns, and consistently accounted for less than 2% of the energy losses, wall shear stresses, and ejection momentum energy. In contrast, physiological characteristics such as chamber size, stroke volume and heart rate had a much greater influence on flow patterns and energy dynamics. The results thus suggested that it might not be necessary to model the torsional motion to study the flow and energy dynamics in left ventricles. (C) 2019 Elsevier Ltd. All rights reserved.
机译:左心室扭转是由心肌中螺旋纤维的缩短和放松引起的,并且被认为是最小化心肌组织菌株的最佳结构。还提出了扭转运动的特征是心脏功能障碍的标志物。然而,它对左心室的流体和能量动力学的影响尚未全面调查。为了调查这一点,我们在不同程度的扭转运动的五个健康的成人猪和两个健康人胎儿左心室(代表两种不同的长度尺度)进行了基于图像的流动模拟。在成人猪心室中,还包括乳头状肌肉和二尖瓣等心脏特征,以及心肌梗塞等心脏病,以研究扭曲的效果。结果表明,对于所研究的所有条件,心室扭转运动导致流动模式的最小变化,并且始终占能量损失,壁剪切应力和喷射动量能量的2%。相反,室尺寸,行程和心率等生理特性对流动模式和能量动力学产生了更大的影响。因此,结果表明,可能没有必要建模扭转动作,以研究左心室的流动和能量动态。 (c)2019年elestvier有限公司保留所有权利。

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